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Joint Load Transfer Efficiency of Rigid Pavement Considering Dynamic Effects under a Single Moving Load

机译:考虑单动荷载作用下动力效应的刚性路面联合荷载传递效率

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the mechanistic analysis presented in this paper is only a beginning of new approach for understanding the real joint load transfer capability on airport and highway concrete pavements. It gives up the two major assumptions those have been popularly adopted by hundreds of published papers: the load is transferred under a wheel with zero speed and with fixed position. The real load transfer in field is always under wheels with non-zero speed and with varied position at any moment. The objective of this study focuses on quantifying the dynamic effects of a moving wheel while it is crossing a joint on a pavement. The analysis is conducted using a model of two-slab system on Kelvin foundation under a moving wheel with variable speed v, different pavement damping Cs, foundation reaction modulus k and foundation damping Ck. The dynamic joint load transfer efficiency is temporarily and empirically defined by the peak strain ratio LTE(S) on the two sides of a joint. The primary findings include: (1) The higher speed of a moving wheel leads to the higher LTE(S);(2) The larger the pavement damping Cs leads to the higher LTE(S);(3) The numerical ratio c(=LTE(S)dynamic/ LTE(S)static) varies in the range 1 to 2 mainly depending on speed v and damping Cs;(4) The LTE(S)dynamic is not sensitive to foundation reaction modulus k and foundation damping Ck. Further researches are needed for appropriate applications of the new model in practice.
机译:本文介绍的力学分析仅仅是了解机场和公路混凝土路面实际联合荷载传递能力的新方法的开端。它放弃了两个已被数百篇论文普遍采用的主要假设:负载在零速固定位置的车轮下传递。现场的实际载荷传递始终处于非零速度且位置随时变化的车轮下。这项研究的目的在于量化动轮在人行道上横穿接缝时的动态效果。在开尔文地基上的两板系统模型在变速v,不同路面阻尼Cs,地基反作用模量k和地基阻尼Ck的动轮下进行分析。动态关节载荷传递效率由关节两侧的峰值应变比LTE(S)临时和经验确定。主要发现包括:(1)动轮速度越高,LTE(S)越高;(2)路面阻尼Cs越大,LTE(S)越高;(3)数值比c( = LTE(S)dynamic / LTE(S)static)在1到2的范围内变化,主要取决于速度v和阻尼Cs;(4)LTE(S)dynamic对基础反应模量k和基础阻尼Ck不敏感。为了在实践中适当应用新模型,还需要进行进一步的研究。

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